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An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity

Polarized epithelia develop distinct cell surface domains, with the apical membrane acquiring characteristic morphological features such as microvilli. Cell polarization is driven by polarity determinants including the evolutionarily conserved partitioning defective (PAR) proteins that are separated...

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Autores principales: Zihni, Ceniz, Vlassaks, Evi, Terry, Stephen, Carlton, Jeremy, Leung, Thomas King Chor, Olson, Michael, Pichaud, Franck, Balda, Maria Susana, Matter, Karl
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617103/
https://www.ncbi.nlm.nih.gov/pubmed/28825699
http://dx.doi.org/10.1038/ncb3592
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author Zihni, Ceniz
Vlassaks, Evi
Terry, Stephen
Carlton, Jeremy
Leung, Thomas King Chor
Olson, Michael
Pichaud, Franck
Balda, Maria Susana
Matter, Karl
author_facet Zihni, Ceniz
Vlassaks, Evi
Terry, Stephen
Carlton, Jeremy
Leung, Thomas King Chor
Olson, Michael
Pichaud, Franck
Balda, Maria Susana
Matter, Karl
author_sort Zihni, Ceniz
collection PubMed
description Polarized epithelia develop distinct cell surface domains, with the apical membrane acquiring characteristic morphological features such as microvilli. Cell polarization is driven by polarity determinants including the evolutionarily conserved partitioning defective (PAR) proteins that are separated into distinct cortical domains. PAR protein segregation is thought to be a consequence of asymmetric actomyosin contractions. The mechanism of activation of apically polarized actomyosin contractility is unknown. Here we show that the Cdc42 effector MRCK activates Myosin-II at the apical pole to segregate aPKC-Par6 from junctional Par3, defining the apical domain. Apically polarized MRCK-activated actomyosin contractility is reinforced by cooperation with aPKC-Par6 downregulating antagonistic RhoA-driven junctional actomyosin contractility, and drives polarization of cytosolic brush border determinants and apical morphogenesis. MRCK-activated polarized actomyosin contractility is required for apical differentiation and morphogenesis in vertebrate epithelia and Drosophila photoreceptors. Our results identify an apical origin of actomyosin-driven morphogenesis that couples cytoskeletal reorganization to PAR polarity signalling.
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spelling pubmed-56171032018-02-21 An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity Zihni, Ceniz Vlassaks, Evi Terry, Stephen Carlton, Jeremy Leung, Thomas King Chor Olson, Michael Pichaud, Franck Balda, Maria Susana Matter, Karl Nat Cell Biol Article Polarized epithelia develop distinct cell surface domains, with the apical membrane acquiring characteristic morphological features such as microvilli. Cell polarization is driven by polarity determinants including the evolutionarily conserved partitioning defective (PAR) proteins that are separated into distinct cortical domains. PAR protein segregation is thought to be a consequence of asymmetric actomyosin contractions. The mechanism of activation of apically polarized actomyosin contractility is unknown. Here we show that the Cdc42 effector MRCK activates Myosin-II at the apical pole to segregate aPKC-Par6 from junctional Par3, defining the apical domain. Apically polarized MRCK-activated actomyosin contractility is reinforced by cooperation with aPKC-Par6 downregulating antagonistic RhoA-driven junctional actomyosin contractility, and drives polarization of cytosolic brush border determinants and apical morphogenesis. MRCK-activated polarized actomyosin contractility is required for apical differentiation and morphogenesis in vertebrate epithelia and Drosophila photoreceptors. Our results identify an apical origin of actomyosin-driven morphogenesis that couples cytoskeletal reorganization to PAR polarity signalling. 2017-08-21 2017-09 /pmc/articles/PMC5617103/ /pubmed/28825699 http://dx.doi.org/10.1038/ncb3592 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Zihni, Ceniz
Vlassaks, Evi
Terry, Stephen
Carlton, Jeremy
Leung, Thomas King Chor
Olson, Michael
Pichaud, Franck
Balda, Maria Susana
Matter, Karl
An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title_full An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title_fullStr An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title_full_unstemmed An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title_short An Apical MRCK-driven Morphogenetic Pathway Controls Epithelial Polarity
title_sort apical mrck-driven morphogenetic pathway controls epithelial polarity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5617103/
https://www.ncbi.nlm.nih.gov/pubmed/28825699
http://dx.doi.org/10.1038/ncb3592
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